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集胞藻PCC 6803藻胆体天线中热诱导和光诱导的重组。热光效应。

Heat- and light-induced reorganizations in the phycobilisome antenna of Synechocystis sp. PCC 6803. Thermo-optic effect.

作者信息

Stoitchkova Katerina, Zsiros Ottó, Jávorfi Tamás, Páli Tibor, Andreeva Atanaska, Gombos Zoltán, Garab Gyozo

机构信息

Institute of Plant Biology, Biological Research Center, Hungarian Academy of Sciences, P.O. Box 521, H-6701 Szeged, Hungary.

出版信息

Biochim Biophys Acta. 2007 Jun;1767(6):750-6. doi: 10.1016/j.bbabio.2007.03.002. Epub 2007 Mar 14.

Abstract

By using absorption and fluorescence spectroscopy, we compared the effects of heat and light treatments on the phycobilisome (PBS) antenna of Synechocystis sp. PCC 6803 cells. Fluorescence emission spectra obtained upon exciting predominantly PBS, recorded at 25 degrees C and 77 K, revealed characteristic changes upon heat treatment of the cells. A 5-min incubation at 50 degrees C, which completely inactivated the activity of photosystem II, led to a small but statistically significant decrease in the F(680)/F(655) fluorescence intensity ratio. In contrast, heat treatment at 60 degrees C resulted in a much larger decrease in the same ratio and was accompanied by a blue-shift of the main PBS emission band at around 655 nm (F(655)), indicating an energetic decoupling of PBS from chlorophylls and reorganizations in its internal structure. (Upon exciting PBS, F(680) originates from photosystem II and from the terminal emitter of PBS.). Very similar changes were obtained upon exposing the cells to high light (600-7500 micromol photons m(-2) s(-1)) for different time periods (10 min to 3 h). In cells with heat-inactivated photosystem II, the variations caused by light treatment could clearly be assigned to a similar energetic decoupling of the PBS from the membrane and internal reorganizations as induced at around 60 degrees C. These data can be explained within the frameworks of thermo-optic mechanism [Cseh et al. 2000, Biochemistry 39, 15250]: in high light the heat packages originating from dissipation might lead to elementary structural changes in the close vicinity of dissipation in heat-sensitive structural elements, e.g. around the site where PBS is anchored to the membrane. This, in turn, brings about a diminishment in the energy supply from PBS to the photosystems and reorganization in the molecular architecture of PBS.

摘要

通过吸收光谱和荧光光谱法,我们比较了热处理和光照处理对集胞藻6803(Synechocystis sp. PCC 6803)细胞藻胆体(PBS)天线的影响。在25℃和77K下激发主要为PBS时获得的荧光发射光谱显示,细胞热处理后有特征性变化。在50℃下孵育5分钟,这完全使光系统II的活性失活,导致F(680)/F(655)荧光强度比值出现微小但具有统计学意义的下降。相比之下,60℃的热处理导致该比值大幅下降,并伴随着约655nm处主要PBS发射带(F(655))的蓝移,表明PBS与叶绿素之间的能量解耦及其内部结构的重组。(激发PBS时,F(680)源自光系统II和PBS的末端发射体。)在不同时间段(10分钟至3小时)将细胞暴露于高光(600 - 7500微摩尔光子·米⁻²·秒⁻¹)下时,也获得了非常相似的变化。在光系统II热失活的细胞中,光照处理引起的变化显然可归因于PBS与膜的类似能量解耦以及在约60℃时诱导的内部重组。这些数据可以在热光机制的框架内得到解释[Cseh等人,2000年,《生物化学》39卷,第15250页]:在高光下,源自耗散的热包可能导致热敏感结构元件中耗散附近的基本结构变化,例如PBS锚定到膜的位点周围。这反过来又导致从PBS到光系统的能量供应减少以及PBS分子结构的重组。

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